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Anvil Design and Experimental Investigation for Ultrasonic Welding of Thin Dissimilar Metalsud

机译:异种金属超声焊接的砧设计与实验研究 ud

摘要

Ultrasonic Welding (USW) is a solid-state bonding process that produces joints by allowing transfer of high frequency vibratory energy in to the work pieces which are brought together under pressure. The whole process is done without melting of any of the material. It can be used as a micro-welding technique which is being widely used for vehicles, shipbuilding, and the welding of electric and electronic parts. Ultrasonic tooling is one which greatly affects the performance of whole welding system. Anvil is an important part which includes in ultrasonic tooling. Design of anvil is peculiarly based on the geometry. Very few studies are done on the effect of welding process on the geometrical changes of the anvil. In this work, ultrasonic anvil was designed in two different geometrical shapes with same material SS 304, which was then fabricated by series of operations and investigated the effects of Tensile strength, T-peel strength and weld quality. The experimental design was done in Taguchi method using L9 orthogonal array and MOORA method was used to convert the multiobjective optimization problem to single one. Then, Taguchi method was further used to optimize the response parameters.
机译:超声波焊接(USW)是一种固态焊接工艺,通过允许将高频振动能量传递到在压力下聚集在一起的工件中来产生接头。整个过程都不​​会熔化任何材料。它可以用作微焊接技术,广泛用于车辆,造船以及电气和电子零件的焊接。超声波工具是一种极大地影响整个焊接系统性能的工具。砧座是包括在超声工具中的重要部分。砧座的设计基于几何形状。关于焊接工艺对砧座几何形状变化的影响的研究很少。在这项工作中,使用相同的材​​料SS 304将超声波砧设计为两种不同的几何形状,然后通过一系列操作进行制造,并研究拉伸强度,T型剥离强度和焊接质量的影响。实验设计采用Taguchi方法,采用L9正交阵列,采用MOORA方法将多目标优化问题转化为单个问题。然后,进一步使用田口方法来优化响应参数。

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    Irshad K T;

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  • 年度 2015
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